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储能系统技术 ★ 5.0

氢能源链多能系统协同规划研究综述

Collaborative planning of integrated hydrogen energy chain multi-energy systems: A review

作者 Tianguang Luab · Xinning Yiac · Jing Lid · Shaocong Wua
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 393 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Advantages of integrating hydrogen energy chain in multi-energy systems.
语言:

中文摘要

摘要 传统的氢能源供应链(HSC)规划大多集中于生产端与消费端之间的储存与运输环节,忽视了各环节之间能量流及其相互作用,因而不适用于能源系统层面的规划分析。为此,本文在HSC基础上提出了氢能源链(HEC)的概念,强调氢能在生产、压缩、储存、运输和应用等环节中不同类型能量流之间的相互作用。HEC在平抑可再生能源波动性以及促进异质能源在时空维度上的优化配置方面发挥着关键作用。考虑HEC因素的有效协同规划模型对于多能系统(MESs)的最优配置至关重要,能够保障系统的高效运行以及经济性和环境友好性。本文对近年来关于集成氢能源链多能系统(HEC-MESs)协同规划的研究文献进行了系统性综述。首先,介绍了HEC-MES的基本框架,重点梳理了HEC中生产、压缩、储存、运输和应用等环节的当前研究进展;其次,回顾了用于规划的氢能技术类型,并总结了MES中HEC的典型表现形式;随后,概述了HEC-MES协同规划的模型与方法,包括所涵盖的部门类型、规划的空间与时间尺度、不确定性处理、模型构建形式以及求解方法的详细分析;最后,本文总结了现有研究中存在的学术空白,并指明了未来的研究方向。

English Abstract

Abstract Most planning of the traditional hydrogen energy supply chain (HSC) focuses on the storage and transportation links between production and consumption ends. It ignores the energy flows and interactions between each link, making it unsuitable for energy system planning analysis. Therefore, this study proposes the concept of a hydrogen energy chain (HEC) based on the HSC, which emphasizes the interactions between different types of energy flows in the production, compression, storage, transportation, and application links of hydrogen. The HEC plays a crucial role in mitigating fluctuations of renewable energy and facilitating the optimal allocation of heterogeneous energy sources across time and space. Effective collaborative planning models that consider HEC are essential for the optimal configuration of multi-energy systems (MESs), which guarantees high-efficiency operation and the economic and environmental friendliness of the system. This paper presents a systematic review of recent articles on collaborative planning of integrated hydrogen energy chain multi-energy systems (HEC-MESs). First, this study introduces the basic framework of HEC-MES, focusing on the current research status of the production, compression, storage, transportation, and application links in HEC. Furthermore, this study reviews technology types of hydrogen energy for planning and summarizes the typical forms of HEC in MESs. Then, the following sections outline the models and methods for collaborative planning of HEC-MES. They include detailed analyses of covered sector types, spatial and temporal scopes of planning, uncertainties, model formulations, and solution methods. Finally, the paper concludes by summarizing the research gaps identified in current articles and outlining directions for future research.
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SunView 深度解读

该氢能链多能系统协同规划研究对阳光电源储能及新能源业务具有重要价值。氢能链可有效平抑可再生能源波动,与公司ST系列储能变流器、PowerTitan储能系统形成互补协同。在制氢环节,SG系列光伏逆变器可提供清洁电力;在应用端,充电桩业务可与氢能基础设施协同布局。建议将氢储能纳入iSolarCloud平台统一调度,结合GFM控制技术实现多能源时空优化配置,提升系统经济性与环境友好性,拓展综合能源解决方案能力。